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Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells

CALM is implicated in the formation of clathrin-coated vesicles, which mediate endocytosis and intracellular trafficking of growth factor receptors and nutrients. We previously found that CALM-deficient mice suffer from severe anemia due to the impaired clathrin-mediated endocytosis of transferrin r...

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Autores principales: Rai, Shinya, Tanaka, Hirokazu, Suzuki, Mai, Ogoh, Honami, Taniguchi, Yasuhiro, Morita, Yasuyoshi, Shimada, Takahiro, Tanimura, Akira, Matsui, Keiko, Yokota, Takafumi, Oritani, Kenji, Tanabe, Kenji, Watanabe, Toshio, Kanakura, Yuzuru, Matsumura, Itaru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184852/
https://www.ncbi.nlm.nih.gov/pubmed/25279552
http://dx.doi.org/10.1371/journal.pone.0109441
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author Rai, Shinya
Tanaka, Hirokazu
Suzuki, Mai
Ogoh, Honami
Taniguchi, Yasuhiro
Morita, Yasuyoshi
Shimada, Takahiro
Tanimura, Akira
Matsui, Keiko
Yokota, Takafumi
Oritani, Kenji
Tanabe, Kenji
Watanabe, Toshio
Kanakura, Yuzuru
Matsumura, Itaru
author_facet Rai, Shinya
Tanaka, Hirokazu
Suzuki, Mai
Ogoh, Honami
Taniguchi, Yasuhiro
Morita, Yasuyoshi
Shimada, Takahiro
Tanimura, Akira
Matsui, Keiko
Yokota, Takafumi
Oritani, Kenji
Tanabe, Kenji
Watanabe, Toshio
Kanakura, Yuzuru
Matsumura, Itaru
author_sort Rai, Shinya
collection PubMed
description CALM is implicated in the formation of clathrin-coated vesicles, which mediate endocytosis and intracellular trafficking of growth factor receptors and nutrients. We previously found that CALM-deficient mice suffer from severe anemia due to the impaired clathrin-mediated endocytosis of transferrin receptor in immature erythroblast. However, CALM has been supposed to regulate the growth and survival of hematopoietic stem/progenitor cells. So, in this study, we focused on the function of CALM in these cells. We here show that the number of Linage(−)Sca-1(+)KIT(+) (LSK) cells decreased in the fetal liver of CALM (−/−) mice. Also, colony forming activity was impaired in CALM(−/−) LSK cells. In addition, SCF, FLT3, and TPO-dependent growth was severely impaired in CALM(−/−) LSK cells, while they can normally proliferate in response to IL-3 and IL-6. We also examined the intracellular trafficking of KIT using CALM (−/−) murine embryonic fibroblasts (MEFs) engineered to express KIT. At first, we confirmed that endocytosis of SCF-bound KIT was not impaired in CALM (−/−) MEFs by the internalization assay. However, SCF-induced KIT trafficking from early to late endosome was severely impaired in CALM (−/−) MEFs. As a result, although intracellular KIT disappeared 30 min after SCF stimulation in wild-type (WT) MEFs, it was retained in CALM (−/−) MEFs. Furthermore, SCF-induced phosphorylation of cytosolic KIT was enhanced and prolonged in CALM (−/−) MEFs compared with that in WT MEFs, leading to the excessive activation of Akt. Similar hyperactivation of Akt was observed in CALM (−/−) KIT(+) cells. These results indicate that CALM is essential for the intracellular trafficking of KIT and its normal functions. Also, our data demonstrate that KIT located in the early endosome can activate downstream molecules as a signaling endosome. Because KIT activation is involved in the pathogenesis of some malignancies, the manipulation of CALM function would be an attractive therapeutic strategy.
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spelling pubmed-41848522014-10-07 Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells Rai, Shinya Tanaka, Hirokazu Suzuki, Mai Ogoh, Honami Taniguchi, Yasuhiro Morita, Yasuyoshi Shimada, Takahiro Tanimura, Akira Matsui, Keiko Yokota, Takafumi Oritani, Kenji Tanabe, Kenji Watanabe, Toshio Kanakura, Yuzuru Matsumura, Itaru PLoS One Research Article CALM is implicated in the formation of clathrin-coated vesicles, which mediate endocytosis and intracellular trafficking of growth factor receptors and nutrients. We previously found that CALM-deficient mice suffer from severe anemia due to the impaired clathrin-mediated endocytosis of transferrin receptor in immature erythroblast. However, CALM has been supposed to regulate the growth and survival of hematopoietic stem/progenitor cells. So, in this study, we focused on the function of CALM in these cells. We here show that the number of Linage(−)Sca-1(+)KIT(+) (LSK) cells decreased in the fetal liver of CALM (−/−) mice. Also, colony forming activity was impaired in CALM(−/−) LSK cells. In addition, SCF, FLT3, and TPO-dependent growth was severely impaired in CALM(−/−) LSK cells, while they can normally proliferate in response to IL-3 and IL-6. We also examined the intracellular trafficking of KIT using CALM (−/−) murine embryonic fibroblasts (MEFs) engineered to express KIT. At first, we confirmed that endocytosis of SCF-bound KIT was not impaired in CALM (−/−) MEFs by the internalization assay. However, SCF-induced KIT trafficking from early to late endosome was severely impaired in CALM (−/−) MEFs. As a result, although intracellular KIT disappeared 30 min after SCF stimulation in wild-type (WT) MEFs, it was retained in CALM (−/−) MEFs. Furthermore, SCF-induced phosphorylation of cytosolic KIT was enhanced and prolonged in CALM (−/−) MEFs compared with that in WT MEFs, leading to the excessive activation of Akt. Similar hyperactivation of Akt was observed in CALM (−/−) KIT(+) cells. These results indicate that CALM is essential for the intracellular trafficking of KIT and its normal functions. Also, our data demonstrate that KIT located in the early endosome can activate downstream molecules as a signaling endosome. Because KIT activation is involved in the pathogenesis of some malignancies, the manipulation of CALM function would be an attractive therapeutic strategy. Public Library of Science 2014-10-03 /pmc/articles/PMC4184852/ /pubmed/25279552 http://dx.doi.org/10.1371/journal.pone.0109441 Text en © 2014 Rai et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rai, Shinya
Tanaka, Hirokazu
Suzuki, Mai
Ogoh, Honami
Taniguchi, Yasuhiro
Morita, Yasuyoshi
Shimada, Takahiro
Tanimura, Akira
Matsui, Keiko
Yokota, Takafumi
Oritani, Kenji
Tanabe, Kenji
Watanabe, Toshio
Kanakura, Yuzuru
Matsumura, Itaru
Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title_full Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title_fullStr Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title_full_unstemmed Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title_short Clathrin Assembly Protein CALM Plays a Critical Role in KIT Signaling by Regulating Its Cellular Transport from Early to Late Endosomes in Hematopoietic Cells
title_sort clathrin assembly protein calm plays a critical role in kit signaling by regulating its cellular transport from early to late endosomes in hematopoietic cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184852/
https://www.ncbi.nlm.nih.gov/pubmed/25279552
http://dx.doi.org/10.1371/journal.pone.0109441
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